member_access.cpp 18 KB

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  1. // Part of the Carbon Language project, under the Apache License v2.0 with LLVM
  2. // Exceptions. See /LICENSE for license information.
  3. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  4. #include "llvm/ADT/STLExtras.h"
  5. #include "toolchain/base/kind_switch.h"
  6. #include "toolchain/check/context.h"
  7. #include "toolchain/check/convert.h"
  8. #include "toolchain/check/import_ref.h"
  9. #include "toolchain/check/subst.h"
  10. #include "toolchain/diagnostics/diagnostic_emitter.h"
  11. #include "toolchain/sem_ir/inst.h"
  12. #include "toolchain/sem_ir/typed_insts.h"
  13. namespace Carbon::Check {
  14. // Returns the name scope corresponding to base_id, or nullopt if not a scope.
  15. // On invalid scopes, prints a diagnostic and still returns the scope.
  16. static auto GetAsNameScope(Context& context, Parse::NodeId node_id,
  17. SemIR::ConstantId base_const_id)
  18. -> std::optional<SemIR::NameScopeId> {
  19. auto base = context.insts().Get(base_const_id.inst_id());
  20. if (auto base_as_namespace = base.TryAs<SemIR::Namespace>()) {
  21. return base_as_namespace->name_scope_id;
  22. }
  23. // TODO: Consider refactoring the near-identical class and interface support
  24. // below.
  25. if (auto base_as_class = base.TryAs<SemIR::ClassType>()) {
  26. auto& class_info = context.classes().Get(base_as_class->class_id);
  27. if (!class_info.is_defined()) {
  28. CARBON_DIAGNOSTIC(QualifiedExprInIncompleteClassScope, Error,
  29. "Member access into incomplete class `{0}`.",
  30. std::string);
  31. auto builder = context.emitter().Build(
  32. node_id, QualifiedExprInIncompleteClassScope,
  33. context.sem_ir().StringifyTypeExpr(base_const_id.inst_id()));
  34. context.NoteIncompleteClass(base_as_class->class_id, builder);
  35. builder.Emit();
  36. }
  37. return class_info.scope_id;
  38. }
  39. if (auto base_as_interface = base.TryAs<SemIR::InterfaceType>()) {
  40. auto& interface_info =
  41. context.interfaces().Get(base_as_interface->interface_id);
  42. if (!interface_info.is_defined()) {
  43. CARBON_DIAGNOSTIC(QualifiedExprInUndefinedInterfaceScope, Error,
  44. "Member access into undefined interface `{0}`.",
  45. std::string);
  46. auto builder = context.emitter().Build(
  47. node_id, QualifiedExprInUndefinedInterfaceScope,
  48. context.sem_ir().StringifyTypeExpr(base_const_id.inst_id()));
  49. context.NoteUndefinedInterface(base_as_interface->interface_id, builder);
  50. builder.Emit();
  51. }
  52. return interface_info.scope_id;
  53. }
  54. // TODO: Per the design, if `base_id` is any kind of type, then lookup should
  55. // treat it as a name scope, even if it doesn't have members. For example,
  56. // `(i32*).X` should fail because there's no name `X` in `i32*`, not because
  57. // there's no name `X` in `type`.
  58. return std::nullopt;
  59. }
  60. // Returns the index of the specified class element within the class's
  61. // representation.
  62. static auto GetClassElementIndex(Context& context, SemIR::InstId element_id)
  63. -> SemIR::ElementIndex {
  64. auto element_inst = context.insts().Get(element_id);
  65. if (auto field = element_inst.TryAs<SemIR::FieldDecl>()) {
  66. return field->index;
  67. }
  68. if (auto base = element_inst.TryAs<SemIR::BaseDecl>()) {
  69. return base->index;
  70. }
  71. CARBON_FATAL() << "Unexpected value " << element_inst
  72. << " in class element name";
  73. }
  74. // Returns whether `function_id` is an instance method, that is, whether it has
  75. // an implicit `self` parameter.
  76. static auto IsInstanceMethod(const SemIR::File& sem_ir,
  77. SemIR::FunctionId function_id) -> bool {
  78. const auto& function = sem_ir.functions().Get(function_id);
  79. for (auto param_id :
  80. sem_ir.inst_blocks().GetOrEmpty(function.implicit_param_refs_id)) {
  81. auto param =
  82. SemIR::Function::GetParamFromParamRefId(sem_ir, param_id).second;
  83. if (param.name_id == SemIR::NameId::SelfValue) {
  84. return true;
  85. }
  86. }
  87. return false;
  88. }
  89. // Returns whether `name_scope_id` is a scope for which impl lookup should be
  90. // performed if we find an associated entity.
  91. static auto ScopeNeedsImplLookup(Context& context,
  92. SemIR::NameScopeId name_scope_id) -> bool {
  93. auto [_, inst] = context.name_scopes().GetInstIfValid(name_scope_id);
  94. if (!inst) {
  95. return false;
  96. }
  97. if (inst->Is<SemIR::InterfaceDecl>()) {
  98. // Don't perform impl lookup if an associated entity is named as a member of
  99. // a facet type.
  100. return false;
  101. }
  102. if (inst->Is<SemIR::Namespace>()) {
  103. // Don't perform impl lookup if an associated entity is named as a namespace
  104. // member.
  105. // TODO: This case is not yet listed in the design.
  106. return false;
  107. }
  108. // Any other kind of scope is assumed to be a type that implements the
  109. // interface containing the associated entity, and impl lookup is performed.
  110. return true;
  111. }
  112. // Given a type and an interface, searches for an impl that describes how that
  113. // type implements that interface, and returns the corresponding witness.
  114. // Returns an invalid InstId if no matching impl is found.
  115. static auto LookupInterfaceWitness(Context& context,
  116. SemIR::ConstantId type_const_id,
  117. SemIR::InterfaceId interface_id)
  118. -> SemIR::InstId {
  119. // TODO: Add a better impl lookup system. At the very least, we should only be
  120. // considering impls that are for the same interface we're querying. We can
  121. // also skip impls that mention any types that aren't part of our impl query.
  122. for (const auto& impl : context.impls().array_ref()) {
  123. if (context.types().GetInstId(impl.self_id) != type_const_id.inst_id()) {
  124. continue;
  125. }
  126. auto interface_type =
  127. context.types().TryGetAs<SemIR::InterfaceType>(impl.constraint_id);
  128. if (!interface_type) {
  129. // TODO: An impl of a constraint type should be treated as implementing
  130. // the constraint's interfaces.
  131. continue;
  132. }
  133. if (interface_type->interface_id != interface_id) {
  134. continue;
  135. }
  136. if (!impl.witness_id.is_valid()) {
  137. // TODO: Diagnose if the impl isn't defined yet?
  138. return SemIR::InstId::Invalid;
  139. }
  140. LoadImportRef(context, impl.witness_id);
  141. return impl.witness_id;
  142. }
  143. return SemIR::InstId::Invalid;
  144. }
  145. // Performs impl lookup for a member name expression. This finds the relevant
  146. // impl witness and extracts the corresponding impl member.
  147. static auto PerformImplLookup(Context& context, Parse::NodeId node_id,
  148. SemIR::ConstantId type_const_id,
  149. SemIR::AssociatedEntityType assoc_type,
  150. SemIR::InstId member_id) -> SemIR::InstId {
  151. auto& interface = context.interfaces().Get(assoc_type.interface_id);
  152. auto witness_id =
  153. LookupInterfaceWitness(context, type_const_id, assoc_type.interface_id);
  154. if (!witness_id.is_valid()) {
  155. CARBON_DIAGNOSTIC(MissingImplInMemberAccess, Error,
  156. "Cannot access member of interface {0} in type {1} "
  157. "that does not implement that interface.",
  158. SemIR::NameId, std::string);
  159. context.emitter().Emit(
  160. node_id, MissingImplInMemberAccess, interface.name_id,
  161. context.sem_ir().StringifyTypeExpr(type_const_id.inst_id()));
  162. return SemIR::InstId::BuiltinError;
  163. }
  164. auto const_id = context.constant_values().Get(member_id);
  165. if (!const_id.is_constant()) {
  166. if (const_id != SemIR::ConstantId::Error) {
  167. context.TODO(member_id, "non-constant associated entity");
  168. }
  169. return SemIR::InstId::BuiltinError;
  170. }
  171. auto assoc_entity =
  172. context.insts().TryGetAs<SemIR::AssociatedEntity>(const_id.inst_id());
  173. if (!assoc_entity) {
  174. context.TODO(member_id, "unexpected value for associated entity");
  175. return SemIR::InstId::BuiltinError;
  176. }
  177. // Substitute into the type declared in the interface.
  178. auto self_param =
  179. context.insts().GetAs<SemIR::BindSymbolicName>(interface.self_param_id);
  180. Substitution substitutions[1] = {
  181. {.bind_id = context.bind_names().Get(self_param.bind_name_id).bind_index,
  182. .replacement_id = type_const_id}};
  183. auto subst_type_id =
  184. SubstType(context, assoc_type.entity_type_id, substitutions);
  185. return context.AddInst(
  186. SemIR::LocIdAndInst::NoLoc<SemIR::InterfaceWitnessAccess>(
  187. {.type_id = subst_type_id,
  188. .witness_id = witness_id,
  189. .index = assoc_entity->index}));
  190. }
  191. // Performs a member name lookup into the specified scope, including performing
  192. // impl lookup if necessary. If the scope is invalid, assume an error has
  193. // already been diagnosed, and return BuiltinError.
  194. static auto LookupMemberNameInScope(Context& context, Parse::NodeId node_id,
  195. SemIR::InstId /*base_id*/,
  196. SemIR::NameId name_id,
  197. SemIR::ConstantId name_scope_const_id,
  198. SemIR::NameScopeId name_scope_id)
  199. -> SemIR::InstId {
  200. auto inst_id = name_scope_id.is_valid() ? context.LookupQualifiedName(
  201. node_id, name_id, name_scope_id)
  202. : SemIR::InstId::BuiltinError;
  203. auto inst = context.insts().Get(inst_id);
  204. // TODO: Use a different kind of instruction that also references the
  205. // `base_id` so that `SemIR` consumers can find it.
  206. auto member_id = context.AddInst<SemIR::NameRef>(
  207. node_id,
  208. {.type_id = inst.type_id(), .name_id = name_id, .value_id = inst_id});
  209. // If member name lookup finds an associated entity name, and the scope is not
  210. // a facet type, perform impl lookup.
  211. //
  212. // TODO: We need to do this as part of searching extended scopes, because a
  213. // lookup that finds an associated entity and also finds the corresponding
  214. // impl member is not supposed to be treated as ambiguous.
  215. if (auto assoc_type = context.types().TryGetAs<SemIR::AssociatedEntityType>(
  216. inst.type_id())) {
  217. if (ScopeNeedsImplLookup(context, name_scope_id)) {
  218. member_id = PerformImplLookup(context, node_id, name_scope_const_id,
  219. *assoc_type, member_id);
  220. }
  221. }
  222. return member_id;
  223. }
  224. // Performs the instance binding step in member access. If the found member is a
  225. // field, forms a class member access. If the found member is an instance
  226. // method, forms a bound method. Otherwise, the member is returned unchanged.
  227. static auto PerformInstanceBinding(Context& context, Parse::NodeId node_id,
  228. SemIR::InstId base_id,
  229. SemIR::InstId member_id) -> SemIR::InstId {
  230. auto member_type_id = context.insts().Get(member_id).type_id();
  231. CARBON_KIND_SWITCH(context.types().GetAsInst(member_type_id)) {
  232. case CARBON_KIND(SemIR::UnboundElementType unbound_element_type): {
  233. // Convert the base to the type of the element if necessary.
  234. base_id = ConvertToValueOrRefOfType(context, node_id, base_id,
  235. unbound_element_type.class_type_id);
  236. // Find the specified element, which could be either a field or a base
  237. // class, and build an element access expression.
  238. auto element_id = context.constant_values().Get(member_id);
  239. CARBON_CHECK(element_id.is_constant())
  240. << "Non-constant value " << context.insts().Get(member_id)
  241. << " of unbound element type";
  242. auto index = GetClassElementIndex(context, element_id.inst_id());
  243. auto access_id = context.AddInst<SemIR::ClassElementAccess>(
  244. node_id, {.type_id = unbound_element_type.element_type_id,
  245. .base_id = base_id,
  246. .index = index});
  247. if (SemIR::GetExprCategory(context.sem_ir(), base_id) ==
  248. SemIR::ExprCategory::Value &&
  249. SemIR::GetExprCategory(context.sem_ir(), access_id) !=
  250. SemIR::ExprCategory::Value) {
  251. // Class element access on a value expression produces an ephemeral
  252. // reference if the class's value representation is a pointer to the
  253. // object representation. Add a value binding in that case so that the
  254. // expression category of the result matches the expression category of
  255. // the base.
  256. access_id = ConvertToValueExpr(context, access_id);
  257. }
  258. return access_id;
  259. }
  260. case CARBON_KIND(SemIR::FunctionType fn_type): {
  261. if (IsInstanceMethod(context.sem_ir(), fn_type.function_id)) {
  262. return context.AddInst<SemIR::BoundMethod>(
  263. node_id, {.type_id = context.GetBuiltinType(
  264. SemIR::BuiltinKind::BoundMethodType),
  265. .object_id = base_id,
  266. .function_id = member_id});
  267. }
  268. [[fallthrough]];
  269. }
  270. default:
  271. // Not an instance member: no instance binding.
  272. return member_id;
  273. }
  274. }
  275. auto PerformMemberAccess(Context& context, Parse::NodeId node_id,
  276. SemIR::InstId base_id, SemIR::NameId name_id)
  277. -> SemIR::InstId {
  278. // If the base is a name scope, such as a class or namespace, perform lookup
  279. // into that scope.
  280. if (auto base_const_id = context.constant_values().Get(base_id);
  281. base_const_id.is_constant()) {
  282. if (auto name_scope_id = GetAsNameScope(context, node_id, base_const_id)) {
  283. return LookupMemberNameInScope(context, node_id, base_id, name_id,
  284. base_const_id, *name_scope_id);
  285. }
  286. }
  287. // If the base isn't a scope, it must have a complete type.
  288. auto base_type_id = context.insts().Get(base_id).type_id();
  289. if (!context.TryToCompleteType(base_type_id, [&] {
  290. CARBON_DIAGNOSTIC(IncompleteTypeInMemberAccess, Error,
  291. "Member access into object of incomplete type `{0}`.",
  292. SemIR::TypeId);
  293. return context.emitter().Build(base_id, IncompleteTypeInMemberAccess,
  294. base_type_id);
  295. })) {
  296. return SemIR::InstId::BuiltinError;
  297. }
  298. // Materialize a temporary for the base expression if necessary.
  299. base_id = ConvertToValueOrRefExpr(context, base_id);
  300. base_type_id = context.insts().Get(base_id).type_id();
  301. auto base_type_const_id = context.types().GetConstantId(base_type_id);
  302. // Find the scope corresponding to the base type.
  303. auto name_scope_id = GetAsNameScope(context, node_id, base_type_const_id);
  304. if (!name_scope_id) {
  305. // The base type is not a name scope. Try some fallback options.
  306. if (auto struct_type = context.insts().TryGetAs<SemIR::StructType>(
  307. base_type_const_id.inst_id())) {
  308. // TODO: Do we need to optimize this with a lookup table for O(1)?
  309. for (auto [i, ref_id] :
  310. llvm::enumerate(context.inst_blocks().Get(struct_type->fields_id))) {
  311. auto field = context.insts().GetAs<SemIR::StructTypeField>(ref_id);
  312. if (name_id == field.name_id) {
  313. // TODO: Model this as producing a lookup result, and do instance
  314. // binding separately. Perhaps a struct type should be a name scope.
  315. return context.AddInst<SemIR::StructAccess>(
  316. node_id, {.type_id = field.field_type_id,
  317. .struct_id = base_id,
  318. .index = SemIR::ElementIndex(i)});
  319. }
  320. }
  321. CARBON_DIAGNOSTIC(QualifiedExprNameNotFound, Error,
  322. "Type `{0}` does not have a member `{1}`.",
  323. SemIR::TypeId, SemIR::NameId);
  324. context.emitter().Emit(node_id, QualifiedExprNameNotFound, base_type_id,
  325. name_id);
  326. return SemIR::InstId::BuiltinError;
  327. }
  328. if (base_type_id != SemIR::TypeId::Error) {
  329. CARBON_DIAGNOSTIC(QualifiedExprUnsupported, Error,
  330. "Type `{0}` does not support qualified expressions.",
  331. SemIR::TypeId);
  332. context.emitter().Emit(node_id, QualifiedExprUnsupported, base_type_id);
  333. }
  334. return SemIR::InstId::BuiltinError;
  335. }
  336. // Perform lookup into the base type.
  337. auto member_id = LookupMemberNameInScope(context, node_id, base_id, name_id,
  338. base_type_const_id, *name_scope_id);
  339. // Perform instance binding if we found an instance member.
  340. member_id = PerformInstanceBinding(context, node_id, base_id, member_id);
  341. return member_id;
  342. }
  343. auto PerformCompoundMemberAccess(Context& context, Parse::NodeId node_id,
  344. SemIR::InstId base_id,
  345. SemIR::InstId member_expr_id)
  346. -> SemIR::InstId {
  347. // Materialize a temporary for the base expression if necessary.
  348. base_id = ConvertToValueOrRefExpr(context, base_id);
  349. auto base_type_id = context.insts().Get(base_id).type_id();
  350. auto base_type_const_id = context.types().GetConstantId(base_type_id);
  351. auto member_id = member_expr_id;
  352. auto member = context.insts().Get(member_id);
  353. // If the member expression names an associated entity, impl lookup is always
  354. // performed using the type of the base expression.
  355. if (auto assoc_type = context.types().TryGetAs<SemIR::AssociatedEntityType>(
  356. member.type_id())) {
  357. member_id = PerformImplLookup(context, node_id, base_type_const_id,
  358. *assoc_type, member_id);
  359. }
  360. // Perform instance binding if we found an instance member.
  361. member_id = PerformInstanceBinding(context, node_id, base_id, member_id);
  362. // If we didn't perform impl lookup or instance binding, that's an error
  363. // because the base expression is not used for anything.
  364. if (member_id == member_expr_id) {
  365. CARBON_DIAGNOSTIC(CompoundMemberAccessDoesNotUseBase, Error,
  366. "Member name of type `{0}` in compound member access is "
  367. "not an instance member or an interface member.",
  368. SemIR::TypeId);
  369. context.emitter().Emit(node_id, CompoundMemberAccessDoesNotUseBase,
  370. member.type_id());
  371. }
  372. return member_id;
  373. }
  374. } // namespace Carbon::Check